首页> 外文会议>DSCC2010;ASME dynamic systems and control conference >RESPONSIBLE EIGENVALUE APPROACH FOR STABILITY ANALYSIS AND CONTROL DESIGN OF A SINGLE-DELAY LARGE-SCALE SYSTEM WITH RANDOM COUPLING STRENGTHS
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RESPONSIBLE EIGENVALUE APPROACH FOR STABILITY ANALYSIS AND CONTROL DESIGN OF A SINGLE-DELAY LARGE-SCALE SYSTEM WITH RANDOM COUPLING STRENGTHS

机译:具有随机耦合强度的单延迟大型系统稳定性分析和控制设计的可靠特征值方法

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A class of linear time-invariant (LTI) consensus system with multiple agents and communication delays among the agents is studied. The delay margin of this MIMO system, that is, the largest amount of the delay that the system can withstand without loosing stability, can be studied by the authors' Responsible Eigenvalue (RE) concept. RE is able to compress the considered stability problem into the stability problem of a single agent system, from which RE captures the delay margin of the entire MIMO system. RE is used here to design controllers for the MIMO system for the objective of increasing the delay margin. Case studies demonstrate connections between coupling strengths, graph Laplacian, the delay margin of a large-scale consensus system, and control synthesis.
机译:研究了一类具有多个智能体和智能体之间的通信延迟的线性时不变(LTI)共识系统。可以通过作者的“本征值”(Responsible Eigenvalue,RE)概念研究此MIMO系统的延迟裕度,即系统可以承受的最大延迟量。 RE能够将考虑的稳定性问题压缩为单代理系统的稳定性问题,RE可以从中捕获整个MIMO系统的延迟余量。为了增加延迟余量,RE在这里用于设计MIMO系统的控制器。案例研究证明了耦合强度,图拉普拉斯算子,大规模共识系统的延迟余量和控制综合之间的联系。

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